Mukherjee Dipta, Dey Arjun, Mary Esther A Carmel, Sridhara N, Kumar D Raghavendra, Rajendra A, Sharma Anand Kumar, Mukhopadhyay Anoop Kumar
Advanced Mechanical and Materials Characterization Division, CSIR-Central Glass and Ceramic Research Institute Kolkata-700 032 India
Thermal Systems Group, U. R. Rao Satellite Centre (Formarly Known as ISRO Satellite Centre) Bangalore-560 017 India
RSC Adv. 2018 Sep 4;8(54):30966-30977. doi: 10.1039/c8ra04957b. eCollection 2018 Aug 30.
Smooth, uniform mixed valance vanadium oxide (VO) thin films are grown on flexible, transparent Kapton and opaque Al6061 substrates by the spin coating technique at a constant rpm of 3000. Various elements , F, Ti, Mo and W are utilized for doping and co-doping of VO. All the spin coated films are heat treated in a vacuum. Other than the doping elements the existence of only V and V species is noticed in the present films. Transmittance as a function of wavelength and the optical band gap are also investigated for doped and co-doped VO thin films grown on a Kapton substrate. The highest transparency (∼75%) is observed for the Ti, Mo and F (, Ti-Mo-FVO) co-doped VO system while the lowest transparency (∼35%) is observed for the F (, FVO) doped VO system. Thus, the highest optical band gap is estimated as 2.73 eV for Ti-Mo-FVO and the lowest optical band gap (, 2.59 eV) is found for the FVO system. The temperature dependent phase transition characteristics of doped and co-doped VO films on both Kapton and Al6061 are studied by the differential scanning calorimetry (DSC) technique. Reversible and repeatable phase transition is noticed in the range of -24 to -26.3 °C.
通过旋涂技术,在柔性透明聚酰亚胺(Kapton)和不透明的6061铝合金基板上,以3000转/分钟的恒定转速生长出光滑、均匀的混合价态氧化钒(VO)薄膜。利用各种元素,如氟(F)、钛(Ti)、钼(Mo)和钨(W)对VO进行掺杂和共掺杂。所有旋涂薄膜均在真空中进行热处理。除了掺杂元素外,在当前薄膜中仅发现了V和V物种的存在。还研究了在Kapton基板上生长的掺杂和共掺杂VO薄膜的透过率与波长的函数关系以及光学带隙。对于钛、钼和氟(Ti-Mo-FVO)共掺杂的VO系统,观察到最高透明度(约75%),而对于氟(FVO)掺杂的VO系统,观察到最低透明度(约35%)。因此,Ti-Mo-FVO的最高光学带隙估计为2.73 eV,而FVO系统的最低光学带隙(2.59 eV)。通过差示扫描量热法(DSC)技术研究了在Kapton和6061铝合金上的掺杂和共掺杂VO薄膜的温度依赖性相变特性。在-24至-26.3°C范围内观察到可逆且可重复的相变。